| Literature DB >> 28492482 |
David P Gavin1,2, Dennis R Grayson3, Sajoy P Varghese4, Marina Guizzetti5,6.
Abstract
Prenatal alcohol exposure causes persistent neuropsychiatric deficits included under the term fetal alcohol spectrum disorders (FASD). Cellular identity emerges from a cascade of intrinsic and extrinsic (involving cell-cell interactions and signaling) processes that are partially initiated and maintained through changes in chromatin structure. Prenatal alcohol exposure influences neuronal and astrocyte development, permanently altering brain connectivity. Prenatal alcohol exposure also alters chromatin structure through histone and DNA modifications. However, the data linking alcohol-induced differentiation changes with developmental alterations in chromatin structure remain to be elucidated. In the first part of this review, we discuss the sequence of chromatin structural changes involved in neural cell differentiation during normal development. We then discuss the effects of prenatal alcohol on developmental histone modifications and DNA methylation in the context of neurogenesis and astrogliogenesis. We attempt to synthesize the developmental literature with the FASD literature, proposing that alcohol-induced changes to chromatin structure account for altered neurogenesis and astrogliogenesis as well as altered neuron and astrocyte differentiation. Together these changes may contribute to the cognitive and behavioral abnormalities in FASD. Future studies using standardized alcohol exposure paradigms at specific developmental stages will advance the understanding of how chromatin structural changes impact neural cell fate and maturation in FASD.Entities:
Keywords: DNA methylation; astrocytes; chromatin; fetal alcohol; histone modifications; neural cell differentiation; neurons
Year: 2017 PMID: 28492482 PMCID: PMC5448011 DOI: 10.3390/genes8050137
Source DB: PubMed Journal: Genes (Basel) ISSN: 2073-4425 Impact factor: 4.096
Figure 1Cortical neural cell development and changes in chromatin structure. (A) Prior to embryonic day (E) nine neural precursor cells are in an undifferentiated state that is maintained by a combination of histone acetylation and histone lysine 4 (H3K4) methylation associated with increased gene expression of pluripotency genes, such as Pou5f1 and Nanog; (B) repressive histone modifications, such as histone 3 lysine 27 methylation (H3K27me2/3) and DNA methylation (5-methylcytosine (5mC)) prevent expression of genes that would lead to neuronal differentiation such as high-mobility group A (HMGA) family of DNA-binding proteins and Dlx homeobox genes; (C) at approximately E9, a chromatin regulation switch is flipped between pluripotency to a neurogenic phase of brain development. Pluripotency gene promoters are switched off by restrictive histone modifications, DNA methylation, and the methyl-CpG binding domain protein MeCP2 binding to 5mC; (D) Neurogenic genes are turned on through the removal of methyl groups from H3K27, the addition of methyl groups to lysine 4 of H3 (H3K4me2/3), and the conversion of repressive 5mC to 5-hydroxymethylcytosine (5hmC); (E) at approximately E18–19 in the neocortex, the chromatin regulation switch is flipped once again, this time turning off neurogenic genes in neural cell precursors and turning on astrogliogenic genes. Histone acetylation and DNA demethylation turns on astrogliogenesis. By postnatal day (P) 7 most neurons have reached their final location in the neocortex, while gliogenesis continues. Orange: histone acetylation; purple: histone methylation; blue: proteins binding DNA; yellow: DNA methylation; brown: DNA 5-hydroxymethylation.
Fetal alcohol induced changes in DNA methylation.
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↓ | E8.25 | E10 | Neural tube | mice | U | [ | |
| ↓ | E9–11 | E11 | whole embryo | mice | B | [ | |
| NC | E5–16 | E17 | ammonic neuroepithelium | mice | B | [ | |
| ↑ | E5–16 | E17 | intermediate zone | mice | B | [ | |
| ↑ | E5–16 | E17 | hippocampus CA1 | mice | B | [ | |
| ↓ | P7 | P8 | hippocampus | mice | B | [ | |
| ↓ | P7 | P8 | neocortex | mice | B | [ | |
| ↑ | P2–10 | P21 | Prefrontal cortex | rats | B | [ | |
| ↑ | P2–10 | P21 | hippocampus | rats | B | [ | |
| NC | E7–21 | P60–80 | hypothalamus | rats | B | [ | |
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| mostly ↓ | 48 h | NSC | B | [ | ||
| ↑↓ | E8–10 * | E10 | whole embryo | mice | B | [ | |
| mostly ↑ | P4 & P7 | P70 | Hippocampus | mice | M | [ | |
| ↑↓ | 5–18 yo | Buccal Epithelial Cells | human | B | [ | ||
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| ↑ | 48 h | NSC | F | [ | ||
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| ↑ | D0–2 | D2 | NSC | mice | B | [ |
| ↓ | D0–8 | D8 | NSC | mice | B | [ | |
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| ↓ | E9 | E9 | whole embryo | mice | B | [ |
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| ↑ | E1–21 | E21 | whole brain | rats | B | [ |
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| ↓ | 24 h | primary cortical astrocytes | rats | B | [ | |
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| ↓ | correlated with alcohol drinking | sperm | human | M | [ | |
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| ↓ | 1–26 yo | blood | human | B | [ | |
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| ↓ | 1–26 yo | blood | human | B | [ | |
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| ↑ | E1–21 | P55 | hypothalamus | rats | F | [ |
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| ↑ | E7–21 | P60–80 | hypothalamus | rats | B | [ |
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| ↑ | E0.5–8.5 | P28 | hippocampus | mice | M | [ |
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| ↑ | E0.5–8.5 | P28 | hippocampus | mice | M | [ |
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| ↓ | E0.5–8.5 | P28 | hippocampus | mice | M | [ |
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| ↓ | E0.5–8.5 | P120 | hippocampus | mice | M | [ |
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| ↓ | E5–16 | E17 | ammonic neuroepithelium | mice | B | [ |
| ↓ | E5–16 | E17 | intermediate zone | mice | B | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↑ | 5D | neurospheres | mice | B | [ | ||
| ↑ | D1–3 | D7 | neurospheres | mice | B | [ | |
| NC | 24 h | primary cortical astrocytes | rats | B | [ | ||
| ↓ | P90–155 | P155 | sperm | rats | M | [ | |
| ↓ | P7 | P8 | hippocampus | mice | B | [ | |
| ↑ | P7 | P8 | neocortex | mice | B | [ | |
| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↑ | 48 h | NSC | F | [ | |||
| NC | 24 h | primary cortical astrocytes | rats | B | [ | ||
| NC | E6–15 | P35 | striatum | mice | U | [ | |
| ↓ | P7 | P8 | hippocampus | mice | B | [ | |
| NC | E6–15 | P35 | cortex | mice | U | [ | |
| ↓ | P7 | P8 | neocortex | mice | B | [ | |
| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ | |
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| ↑ | 48 h | embryonic fibroblasts | mice | M | [ | |
| NC | 24 h | primary cortical astrocytes | rats | B | [ | ||
| ↓ | P7 (high dose) | P8 | hippocampus | mice | B | [ | |
| ↑ | P7 (low dose) | P8 | hippocampus | mice | B | [ | |
| ↓ | P7 (high dose) | P8 | neocortex | mice | B | [ | |
| ↑ | P7 (low dose) | P8 | neocortex | mice | B | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↓ | 24 h | primary cortical astrocytes | rats | B | [ | ||
| ↓ | P7 (high dose) | P8 | hippocampus | mice | B | [ | |
| ↑ | P7 (low dose) | P8 | hippocampus | mice | B | [ | |
| ↓ | P7 (high dose) | P8 | neocortex | mice | B | [ | |
| ↑ | P7 (low dose) | P8 | neocortex | mice | B | [ | |
| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ | |
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| ↑ | 48 h | embryonic fibroblasts | mice | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
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| ↑ | 48 h | NSC | F | [ | ||
| ↓ | 24 or 48 h | primary cortical astrocytes | rats | B | [ | ||
| ↓ | E9–11 | E11 | whole embryo | mice | B | [ | |
| ↑ | E1-P10 | P21 | hippocampus | rats | B | [ | |
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| ↑ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↑ | D0–2 | D2 | NSC | mice | B | [ | |
| ↑ | D0–8 | D8 | NSC | mice | B | [ | |
| ↓ | D0–2 | D8 | NSC | mice | B | [ | |
| ↓ | D3–13 | D13 | primary cortical neurons | mice | B | [ | |
| ↓ | D3–8 | D13 | primary cortical neurons | mice | B | [ | |
| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ | |
| NC | P7 (low dose) | P8 | hippocampus | mice | B | [ | |
| NC | P7 (low dose) | P8 | neocortex | mice | B | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
| ↑ | D0–2 | D2 | NSC | mice | B | [ | |
| ↑ | D0–8 | D8 | NSC | mice | B | [ | |
| ↓ | D0–2 | D8 | NSC | mice | B | [ | |
| ↓ | D3–13 | D13 | primary cortical neurons | mice | B | [ | |
| ↓ | D3–8 | D13 | primary cortical neurons | mice | B | [ | |
| ↓ | E6–15 | P35 | striatum | mice | U | [ | |
| ↓ | E5–16 | E17 | hippocampus | mice | B | [ | |
| ↑ | P7 (low dose) | P8 | hippocampus | mice | B | [ | |
| ↑ | E8–21 | Adult | hippocampus | rats | M | [ | |
| ↓ | E6–15 | P35 | cortex | mice | U | [ | |
| ↑ | P7 (low dose) | P8 | neocortex | mice | B | [ | |
| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
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| ↓ | 48 h | embryonic fibroblasts | mice | M | [ | |
Abbreviations: 5mC, 5-methylcytosine; 5hmC, 5-hydroxymethylcytosine; B, Both sexes; CA1, Cornu Ammonis-1; D, Number of days cultured; DNMT1, DNA methyltransferase-1; DNMT3A, DNA methyltransferase-3A; DNMT3B, DNA methyltransferase-3B; E, embryonic day; F, Female; Gfap, Glial fibrillary acidic protein; h, hours; IG-DMR; intergenic-differentially methylated region; Igf2, Insulin Like Growth Factor 2; KCNQ1OT1, KCNQ1 opposite strand/antisense transcript 1; M, Male; MBD, Methyl-CpG binding domain; MeCP2, methyl CpG binding protein 2; NC, No change; NSC, neural stem cells; Olfr601, olfactory receptor 601; P, postnatal day; PEG3, Paternally Expressed 3; Plat, Plasminogen Activator, Tissue Type; Pomc, Pro-opiomelanocortin; Slc17a6, Solute Carrier Family 17 Member 6; Slc6a4, serotonin transporter; U, Unclear; Vpreb2, pre-B lymphocyte gene 2; yo, years old; * Embryo treated ex vivo.
Fetal alcohol induced changes in histone modifications.
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| ↓ | E7–21 | P60–80 | hypothalamus | rats | M | [ |
| ↓ | P2–10 | P2–10 | cerebellum | rats | B | [ | |
| NC | P2–12 | P12 | cerebellum | rats | B | [ | |
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| ↑ | D1–3 (low dose) | D3 | NSC | mice | B | [ |
| ↓ | D1–3 (high dose) | D3 | NSC | mice | B | [ | |
| ↑ | D1–3 (low dose) | D7 | NSC | mice | B | [ | |
| ↓ | D1–3 (high dose) | D7 | NSC | mice | B | [ | |
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| ↑ | P7 (low dose) | P8 | neocortex | mice | B | [ |
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| ↑ | P7 | P8 | neocortex, hippocamus | mice | B | [ |
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| ↑ | E7 | E17 | neocortex | mice | B | [ |
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| ↓ | E7–21 | P60–80 | hypothalamus | rats | B | [ |
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| ↓ | P2–10 | P2–10 | cerebellum | rats | B | [ |
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| NC | P2–12 | P12 | cerebellum | rats | B | [ |
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| ↓ | P7 | P7 | whole brain | mice | M | [ |
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| ↑ | E7–21 | P60–80 | hypothalamus | rats | B | [ |
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| ↓ | E7–21 | P60–65 | hypothalamus | rats | M | [ |
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| ↑ | D1–3 (low dose) | D3 | NSC | mice | B | [ |
| ↓ | D1–3 (high dose) | D3 | NSC | mice | B | [ | |
| ↑↓ | D1–3 (low dose) | D7 | NSC | mice | B | [ | |
| ↑↓ | D1–3 (high dose) | D7 | NSC | mice | B | [ | |
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| ↑↓ | P4 & P7 | P70 | Hippocampus | mice | M | [ |
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| ↑ | E0.5–8.5 | P120 | hippocampus | mice | M | [ |
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| ↓ | D1–5 | D5 | neurospheres | mice | B | [ |
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| ↓ | D1–5 | D5 | neurospheres | mice | B | [ |
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| ↓ | D1–5 | D5 | neurospheres | mice | B | [ |
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| ↓ | D1–5 | D5 | neurospheres | mice | B | [ |
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| ↓ | E7–21 | P60–80 | hypothalamus | rats | M | [ |
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| ↓ | D1–5 | D5 | neurospheres | mice | B | [ |
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| ↑ | E7–21 | P60–65 | hypothalamus | rats | M | [ |
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| ↑ | P7 (high dose) | P8 | hippocampus | mice | B | [ |
| ↑ | P7 (high dose) | P8 | neocortex | mice | B | [ | |
| ↓ | D1–3 (low dose) | D3 | NSC | mice | B | [ | |
| ↓ | D1–3 (high dose) | D3 | NSC | mice | B | [ | |
| ↑ | D1–3 (low dose) | D7 | NSC | mice | B | [ | |
| ↑ | D1–3 (high dose) | D7 | NSC | mice | B | [ | |
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| ↓ | P7 | P8 | neocortex, hippocampus | mice | B | [ |
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| ↑ | E7 | E17 | neocortex | mice | B | [ |
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| ↑ | E7 | E17 | neocortex | mice | B | [ |
Abbreviations: Ascl1, Achaete-Scute Family BHLH Transcription Factor 1; Ash2l, Absent, Small, Or Homeotic-Like; B, Both sexes; Cnr1, Cannabinoid 1 receptor; CREBBP, CREB binding protein; D, Number of days cultured; Dlx1, Distal-Less Homeobox 1; Dlx2, Distal-Less Homeobox 2; Dlx3, Distal-Less Homeobox 3; E, embryonic day; EED, Embryonic Ectoderm Development; EHMT1, Euchromatic Histone-Lysine N-Methyltransferase 1; EHMT2, Euchromatic Histone-Lysine N-Methyltransferase 2; EZH2, Enhancer of Zeste 2; F, Female; H3K4, H3 lysine 4; H3K9, H3 lysine 9; H3K27, H3 lysine 27; HATs, Histone acetyltransferases; HDACs, Histone deacetylases; HMT, histone methyltransferase; Kdm1b, Lysine Demethylase 1b; M, Male; NC, No change; NSC, neural stem cells; P, postnatal day; Pax6, Paired Box 6; PRC2, Polycomb Repressive Complex-2; Slc17a6, Solute Carrier Family 17 Member 6; Setd7, SET domain containing (lysine methyltransferase) 7; SETDB1, SET Domain Bifurcated 1; Sox2, (sex determining region Y)-box 2.